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Nicotine promotes e-cigarette vapour-induced lung inflammation and structural alterations

BACKGROUND: Electronic cigarette (e-cigarette) vapour is gaining popularity as an alternative to tobacco smoking and can induce acute lung injury. However, the specific role of nicotine in e-cigarette vapour and its long-term effects on the airways, lung parenchyma and vasculature remain unclear. RE...

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Autores principales: Roxlau, Elsa T., Pak, Oleg, Hadzic, Stefan, Garcia-Castro, Claudia F., Gredic, Marija, Wu, Cheng-Yu, Schäffer, Julia, Selvakumar, Balachandar, Pichl, Alexandra, Spiegelberg, David, Deutscher, Janik, Bednorz, Mariola, Schäfer, Katharina, Kraut, Simone, Kosanovic, Djuro, Zeidan, Esraa M., Kojonazarov, Baktybek, Herold, Susanne, Strielkov, Ievgen, Guenther, Andreas, Wilhelm, Jochen, Khalifa, Mohamed M.A., Taye, Ashraf, Brandes, Ralf P., Hecker, Matthias, Grimminger, Friedrich, Ghofrani, Hossein A., Schermuly, Ralph T., Seeger, Werner, Sommer, Natascha, Weissmann, Norbert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Respiratory Society 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10285110/
https://www.ncbi.nlm.nih.gov/pubmed/37105573
http://dx.doi.org/10.1183/13993003.00951-2022
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author Roxlau, Elsa T.
Pak, Oleg
Hadzic, Stefan
Garcia-Castro, Claudia F.
Gredic, Marija
Wu, Cheng-Yu
Schäffer, Julia
Selvakumar, Balachandar
Pichl, Alexandra
Spiegelberg, David
Deutscher, Janik
Bednorz, Mariola
Schäfer, Katharina
Kraut, Simone
Kosanovic, Djuro
Zeidan, Esraa M.
Kojonazarov, Baktybek
Herold, Susanne
Strielkov, Ievgen
Guenther, Andreas
Wilhelm, Jochen
Khalifa, Mohamed M.A.
Taye, Ashraf
Brandes, Ralf P.
Hecker, Matthias
Grimminger, Friedrich
Ghofrani, Hossein A.
Schermuly, Ralph T.
Seeger, Werner
Sommer, Natascha
Weissmann, Norbert
author_facet Roxlau, Elsa T.
Pak, Oleg
Hadzic, Stefan
Garcia-Castro, Claudia F.
Gredic, Marija
Wu, Cheng-Yu
Schäffer, Julia
Selvakumar, Balachandar
Pichl, Alexandra
Spiegelberg, David
Deutscher, Janik
Bednorz, Mariola
Schäfer, Katharina
Kraut, Simone
Kosanovic, Djuro
Zeidan, Esraa M.
Kojonazarov, Baktybek
Herold, Susanne
Strielkov, Ievgen
Guenther, Andreas
Wilhelm, Jochen
Khalifa, Mohamed M.A.
Taye, Ashraf
Brandes, Ralf P.
Hecker, Matthias
Grimminger, Friedrich
Ghofrani, Hossein A.
Schermuly, Ralph T.
Seeger, Werner
Sommer, Natascha
Weissmann, Norbert
author_sort Roxlau, Elsa T.
collection PubMed
description BACKGROUND: Electronic cigarette (e-cigarette) vapour is gaining popularity as an alternative to tobacco smoking and can induce acute lung injury. However, the specific role of nicotine in e-cigarette vapour and its long-term effects on the airways, lung parenchyma and vasculature remain unclear. RESULTS: In vitro exposure to nicotine-containing e-cigarette vapour extract (ECVE) or to nicotine-free e-cigarette vapour extract (NF ECVE) induced changes in gene expression of epithelial cells and pulmonary arterial smooth muscle cells (PASMCs), but ECVE in particular caused functional alterations (e.g. a decrease in human and mouse PASMC proliferation by 29.3±5.3% and 44.3±8.4%, respectively). Additionally, acute inhalation of nicotine-containing e-cigarette vapour (ECV) but not nicotine-free e-cigarette vapour (NF ECV) increased pulmonary endothelial permeability in isolated lungs. Long-term in vivo exposure of mice to ECV for 8 months significantly increased the number of inflammatory cells, in particular lymphocytes, compared to control and NF ECV in the bronchoalveolar fluid (BALF) (ECV: 853.4±150.8 cells·mL(−1); control: 37.0±21.1 cells·mL(−1); NF ECV: 198.6±94.9 cells·mL(−1)) and in lung tissue (ECV: 25.7±3.3 cells·mm(−3); control: 4.8±1.1 cells·mm(−3); NF ECV: 14.1±2.2 cells·mm(−3)). BALF cytokines were predominantly increased by ECV. Moreover, ECV caused significant changes in lung structure and function (e.g. increase in airspace by 17.5±1.4% compared to control), similar to mild tobacco smoke-induced alterations, which also could be detected in the NF ECV group, albeit to a lesser degree. In contrast, the pulmonary vasculature was not significantly affected by ECV or NF ECV. CONCLUSIONS: NF ECV components induce cell type-specific effects and mild pulmonary alterations, while inclusion of nicotine induces significant endothelial damage, inflammation and parenchymal alterations.
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spelling pubmed-102851102023-06-23 Nicotine promotes e-cigarette vapour-induced lung inflammation and structural alterations Roxlau, Elsa T. Pak, Oleg Hadzic, Stefan Garcia-Castro, Claudia F. Gredic, Marija Wu, Cheng-Yu Schäffer, Julia Selvakumar, Balachandar Pichl, Alexandra Spiegelberg, David Deutscher, Janik Bednorz, Mariola Schäfer, Katharina Kraut, Simone Kosanovic, Djuro Zeidan, Esraa M. Kojonazarov, Baktybek Herold, Susanne Strielkov, Ievgen Guenther, Andreas Wilhelm, Jochen Khalifa, Mohamed M.A. Taye, Ashraf Brandes, Ralf P. Hecker, Matthias Grimminger, Friedrich Ghofrani, Hossein A. Schermuly, Ralph T. Seeger, Werner Sommer, Natascha Weissmann, Norbert Eur Respir J Original Research Articles BACKGROUND: Electronic cigarette (e-cigarette) vapour is gaining popularity as an alternative to tobacco smoking and can induce acute lung injury. However, the specific role of nicotine in e-cigarette vapour and its long-term effects on the airways, lung parenchyma and vasculature remain unclear. RESULTS: In vitro exposure to nicotine-containing e-cigarette vapour extract (ECVE) or to nicotine-free e-cigarette vapour extract (NF ECVE) induced changes in gene expression of epithelial cells and pulmonary arterial smooth muscle cells (PASMCs), but ECVE in particular caused functional alterations (e.g. a decrease in human and mouse PASMC proliferation by 29.3±5.3% and 44.3±8.4%, respectively). Additionally, acute inhalation of nicotine-containing e-cigarette vapour (ECV) but not nicotine-free e-cigarette vapour (NF ECV) increased pulmonary endothelial permeability in isolated lungs. Long-term in vivo exposure of mice to ECV for 8 months significantly increased the number of inflammatory cells, in particular lymphocytes, compared to control and NF ECV in the bronchoalveolar fluid (BALF) (ECV: 853.4±150.8 cells·mL(−1); control: 37.0±21.1 cells·mL(−1); NF ECV: 198.6±94.9 cells·mL(−1)) and in lung tissue (ECV: 25.7±3.3 cells·mm(−3); control: 4.8±1.1 cells·mm(−3); NF ECV: 14.1±2.2 cells·mm(−3)). BALF cytokines were predominantly increased by ECV. Moreover, ECV caused significant changes in lung structure and function (e.g. increase in airspace by 17.5±1.4% compared to control), similar to mild tobacco smoke-induced alterations, which also could be detected in the NF ECV group, albeit to a lesser degree. In contrast, the pulmonary vasculature was not significantly affected by ECV or NF ECV. CONCLUSIONS: NF ECV components induce cell type-specific effects and mild pulmonary alterations, while inclusion of nicotine induces significant endothelial damage, inflammation and parenchymal alterations. European Respiratory Society 2023-06-22 /pmc/articles/PMC10285110/ /pubmed/37105573 http://dx.doi.org/10.1183/13993003.00951-2022 Text en Copyright ©The authors 2023. https://creativecommons.org/licenses/by-nc/4.0/This version is distributed under the terms of the Creative Commons Attribution Non-Commercial Licence 4.0. For commercial reproduction rights and permissions contact permissions@ersnet.org (mailto:permissions@ersnet.org)
spellingShingle Original Research Articles
Roxlau, Elsa T.
Pak, Oleg
Hadzic, Stefan
Garcia-Castro, Claudia F.
Gredic, Marija
Wu, Cheng-Yu
Schäffer, Julia
Selvakumar, Balachandar
Pichl, Alexandra
Spiegelberg, David
Deutscher, Janik
Bednorz, Mariola
Schäfer, Katharina
Kraut, Simone
Kosanovic, Djuro
Zeidan, Esraa M.
Kojonazarov, Baktybek
Herold, Susanne
Strielkov, Ievgen
Guenther, Andreas
Wilhelm, Jochen
Khalifa, Mohamed M.A.
Taye, Ashraf
Brandes, Ralf P.
Hecker, Matthias
Grimminger, Friedrich
Ghofrani, Hossein A.
Schermuly, Ralph T.
Seeger, Werner
Sommer, Natascha
Weissmann, Norbert
Nicotine promotes e-cigarette vapour-induced lung inflammation and structural alterations
title Nicotine promotes e-cigarette vapour-induced lung inflammation and structural alterations
title_full Nicotine promotes e-cigarette vapour-induced lung inflammation and structural alterations
title_fullStr Nicotine promotes e-cigarette vapour-induced lung inflammation and structural alterations
title_full_unstemmed Nicotine promotes e-cigarette vapour-induced lung inflammation and structural alterations
title_short Nicotine promotes e-cigarette vapour-induced lung inflammation and structural alterations
title_sort nicotine promotes e-cigarette vapour-induced lung inflammation and structural alterations
topic Original Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10285110/
https://www.ncbi.nlm.nih.gov/pubmed/37105573
http://dx.doi.org/10.1183/13993003.00951-2022
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